
教育经历:
2017/08 – 2022/05 美国波士顿大学 化学系 哲学博士
2012/08 – 2016/06 中国科学技术大学 材料科学与工程系 理学学士
工作经历:
2022/08至今 苏州大学 功能纳米与软物质研究院 副教授
联系方式:
江苏省苏州市工业园区仁爱路199号,910-3323
邮箱:xdan@suda.edu.cn
办公电话:0512-65880226
研究领域:
1. 表面等离激元光物理化学机制
2. 等离激元光催化
个人荣誉:
Nanoscale Emerging Investigator (2026)
新质力材料科学前沿进取奖(2026)
江苏省青年科技人才托举计划(2025)
Wiley突出贡献作者奖(2025)
Nano Research Energy学术新星奖(2024)
苏州大学优秀青年学者(2022)
Sugata Ray Memorial Award (2021)
代表性研究成果:
安兴达长期从事等离激元光(热)催化研究,围绕等离激元催化材料微观设计、性能精准时空调制及机制量化研究开展了系列工作。已以第一/通讯作者在Nat. Commun., PNAS, Angew. Chem., Adv. Mater., Chem等期刊发表论文40余篇,获批发明专利2件;主持国自然项目2项,参与国自然国合项目、科技部重点研发项目各一项。
近年部分代表性论文:
Hu, X.; Liu, J.; Zhu Z.; Liu, S.; Wang, L.; Cheng, J.; Huang, X; Li, C.; Feng, K., Zhou, Y.; Xu, Y; Feng, Q., Zhang, B., Chen, X; Zhang, L., Zhang, Q.; Wu, B.*; Yin, J.* An, X.*; Zhang, X.*; He, L.*,"Activating plasmonic catalysis through light-mediated steady-state spin modulation", Nat. Commun. 2026, 17, 2849.
Ma, Y.; Genest, A.; Liu, S.; Shen, J.; Chen, S., Hu, X; Kang, S., Dong, X; Xi, Y.; Wang, Z., Zhou, Y.; Wu, Z.; Zhu, Z.; Li, C.; Fang, Y.; Zhang, X; Feng, K.*; Rupprechter, G.*; An, X.*; He, L.*, Thermoelectrics-Mediated Photon-Phonon-Electron Coupling Enables Unconventional Thermal Contributions in Plasmonic Catalysis, Adv. Funct. Mater., 2026, DOI: 10.1002/adfm.77363.
Chen, Z., Xiao, M., Li, C.*, Liu, J., Li, H, Zhang, J., Hua, W., An, X.*, He, L.*, "Direct Assembly of Magnetically Tunable Nanoallotropes as Photonic Inks", ACS Nano, 2026, 20, 18101-18110.
Xu, Y., Xue, Y., Li, C, Ji Y, Zhou, Y, Feng, Q, Shen, J, An, X.*, Feng, K.* He, L., "Light-driven ammonia synthesis from nitrogen and hydrogen", J. Mater. Chem. A, 2026, 14, 2071-2083
Liu, S.; Hu, X; Xi, Y.; Feng, Q; Nie, K; Cao, L; Xue, Y.; Li, C.; Feng, K; Witoon, T.; Donphai, W.; Liu, J.; He, L.*; An, X.*, "Synchronizing carrier extraction and dielectric coupling in a hierarchical homometallic plasmonic catalyst for light-driven nitrate reduction", Nanoscale, 2026, 18, 4117-4126.
S. Liu, Z. Wu, Z. Zhu, K. Feng, Y. Zhou, X. Hu, X. Huang, B. Zhang, X. Dong, Y. Ma, K. Nie, J. Shen, Z. Wang, J. He, J. Wang, Y. Ji, B. Yan, Q. Zhang, A. Genest, X. Zhang, C. Li*, B. Wu, X. An*, G. Rupprechter, L. He*. Quantifying the Distinct Role of Plasmon Enhancement Mechanisms in Prototypical Antenna-Reactor Photocatalysts. Nat. Commun. 2025, 16, 2245.
K. Yu, K. Feng, M. Cai, H. Li, Y. Zhou, J. Shen, S. Liu, Z. Zhu, M. Sohail, V. Tolstoy, X. An*, C. Li*, L, He*. Nature-Inspired Nanoarray Catalyst toward Balanced Heat and Mass Transport in Photothermal Catalysis. ACS Nano, 2025, 19, 18674.
Z. Wu, J. Shen, Z. Li, S. Liu, Y. Zhou, K. Feng, B. Zhang, S. Zhao, D. Xue, J. He, K. Yu, J. Zhang, G. Dawson, Q. Zhang, L. Huang, C. Li*, X. An*, L. Chi, X. Zhang*, L. He*. Anisotropic Plasmon Resonance in Ti3C2Tx MXene Enables Site-Selective Plasmonic Catalysis. ACS Nano, 2025, 19, 1832.
X. Dong, Z. Zhu, Z. Chen, Z. Sun, S. Qian, Z. Wang, Y. Zhou, K. Nie, S. Liu, Z. Li, M. Xiao, J. Zhang, B. Yan, Y. Chen, C. Li, X. Zhang, X. An*, K. Feng*, Z. Hu*, L. He*. Boosting Solar Methanol Production over Hierarchical Carbon Nanocage-Supported In2O3-x via Photo-Enhanced Electron Buffering Effect. ACS Nano, 2025, 19, 27, 25403-25412.
Y. Zhou, C. Li*, Z. Wang, S. Liu, X. Hu, J. Zhang, X. Dong, Z. Zhu, K. Feng, X. An*, L. He*. Enhanced Methanol Production Through Photo-Assisted CO2 Hydrogenation Using Au@In2O3 Core-Shell Structures. ChemNanoMat, 2025, 11, 6, e202500129.
L. Zhang, C. Li, T. Witoon, X. An*, L. He*. Nano-thermometry in photothermal catalysis. Chin. J. Struct. Chem., 2025, 44, 100456.
X. Hu, Z. Zhu, Y. Zhou, S. Liu, C. Wu, J. Wang, Y. Shen, T. Yan, L. Zhang, J. Chen, K. Feng, A. Genest, G. Rupprechter, X. An*, C. Li*, L. He*. Enhanced photochemical effects of plasmonic cluster catalysts through aggregated nanostructures. Green Chem., 2024, 26, 6994 (Back cover).
J. Li#, L. Zhang#, X. An#, K. Feng, X. Wang, J. He, Y. Huang, J. Liu, L. Zhang, B. Yan, C. Li, L. He. Tuning Adsorbate-Mediated Strong Metal-Support Interaction by Oxygen Vacancy: A Case Study in Ru/TiO2. Angew. Chem. Int. Ed., 2024, e202407025.
M. Cai#, C. Li#, X. An#, B. Zhong, Y. Zhou, K. Feng, S. Wang, C. Zhang, M. Xiao, Z. Wu, J. He, C. Wu, J. Shen, Z. Zhu, K. Feng, J. Zhong and L. He*, Supra-Photothermal CO2 Methanation over Greenhouse-Like Plasmonic Superstructures of Ultrasmall Cobalt Nanoparticles. Adv. Mater., 2024, 36, 2308859.
J. Wang, Z. Zhu, K. Feng, S. Liu, Y. Zhou, I. Urooj, J. He, Z. Wu, J. Shen, X. Hu, Z. Chen, X. Dong, M. Sohail, Y. Ma, J. Chen, C. Li*, X. An*, L. He*. Anisotropic Plasmon Resonance Enables Spatially Controlled Photothermal and Photochemical Effects in Hot Carrier-Driven Catalysis. Chin. J. Chem., 2024, 42, 1877. (Back cover)
Y. Xiao, K. Feng, G. Dawson, V. P. Tolstoy, X. An*, C. Li*, L. He*. A feasible interlayer strategy for simultaneous light and heat management in photothermal catalysis. iScience, 2024, 27, 109792.
Z. Zhu, R. Tang, C. Li*, X. An*, L. He*. Promises of Plasmonic Antenna‐Reactor Systems in Gas‐Phase CO2 Photocatalysis. Adv. Sci., 2023: 2302568.
X. An, J. C. Kays, I. V. Lightcap, T. Ouyang, A. M. Dennis, and B. M. Reinhard*. Wavelength-dependent bifunctional plasmonic photocatalysis in Au/chalcopyrite hybrid nanostructures. ACS Nano, 2022, 16, 6813.
X. An, A. Majumder, J. McNeely, J. Yang, T. Puri, Z. He, T. Liang, J. K. Snyder, J. E. Straub, and B. M. Reinhard.* Interfacial hydration determines orientational and functional dimorphism of sterol-derived Raman tags in lipid-coated nanoparticles. Proc. Natl. Acad. Sci. U.S.A., 2021, 118, e2105913118.
X. An, D. Stelter, T. Keyes, and B. M. Reinhard*. Plasmonic photocatalysis of urea oxidation and visible-light fuel cells. Chem, 2019, 5, 2228.
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